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首页> 外文期刊>Metallurgist >COMPUTER STUDY OF THE EFFECT OF TOOLING GEOMETRY ON DEFORMATION PARAMETERS IN THE PLASTIC SHAPING OF ALUMINUM WIRE ROD BY MULTI-ECAP-CONFORM
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COMPUTER STUDY OF THE EFFECT OF TOOLING GEOMETRY ON DEFORMATION PARAMETERS IN THE PLASTIC SHAPING OF ALUMINUM WIRE ROD BY MULTI-ECAP-CONFORM

机译:多ECAP一致性的铝制线材塑性成形中刃口几何形状对变形参数影响的计算机研究

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摘要

Results are presented from a computer study of a promising method of high-rate plastic deformation - Multi-ECAP-Conform (M-ECAP-C) - for obtaining long ultrafine-grained semifinished products (wire rods) of aluminum alloy EN-AW 6101 in a single pressing cycle. It is shown that the distribution of cumulative strain in a semifinished product can be controlled by changing the geometry of the tool. The study examined three geometric variants for the outlet section of the pressing channel and used the results to develop an efficient new channel geometry for pressing by the M-ECAP-C method. The new channel shape makes the strain state of semifinished products more uniform during the stage of stable flow of the material, lowers the pressing forces, and reduces the tensile stresses in the deformation zone.
机译:结果来自计算机研究的一种有希望的高速塑性变形方法-Multi-ECAP-Conform(M-ECAP-C)-用于获得铝合金EN-AW 6101长的超细晶粒半成品(盘条)在单个按压周期中。结果表明,可以通过改变工具的几何形状来控制半成品中累积应变的分布。该研究检查了压制通道出口部分的三种几何变化,并使用结果开发出了一种有效的新通道几何形状,用于通过M-ECAP-C方法进行压制。新的通道形状使半成品的应变状态在材料稳定流动的阶段更加均匀,降低了压力,并减小了变形区的拉应力。

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